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ER stress induces NLRP3 inflammasome activation and hepatocyte death

Cell Death and Disease · 2015 · Vol. 6(9) · pp. e1879–e1879
Cynthia LebeaupinEmma ProïcsC H D de BievilleDenis RousseauStéphanie BonnafousStéphanie PatourauxGilbert AdamVanessa LavallardCarole RovèreOphélia Le ThucMarie‐Christine Saint‐PaulRodolphe AntyAnne-Sophie SchneckAntonio IannelliJean GugenheimAlbert TranPhilippe GualBéatrice Bailly‐Maitre

Abstract

The incidence of chronic liver disease is constantly increasing, owing to the obesity epidemic. However, the causes and mechanisms of inflammation-mediated liver damage remain poorly understood. Endoplasmic reticulum (ER) stress is an initiator of cell death and inflammatory mechanisms. Although obesity induces ER stress, the interplay between hepatic ER stress, NLRP3 inflammasome activation and hepatocyte death signaling has not yet been explored during the etiology of chronic liver diseases. Steatosis is a common disorder affecting obese patients; moreover, 25% of these patients develop steatohepatitis with an inherent risk for progression to hepatocarcinoma. Increased plasma LPS levels have been detected in the serum of patients with steatohepatitis. We hypothesized that, as a consequence of increased plasma LPS, ER stress could be induced and lead to NLRP3 inflammasome activation and hepatocyte death associated with steatohepatitis progression. In livers from obese mice, administration of LPS or tunicamycin results in IRE1α and PERK activation, leading to the overexpression of CHOP. This, in turn, activates the NLRP3 inflammasome, subsequently initiating hepatocyte pyroptosis (caspase-1, -11, interleukin-1β secretion) and apoptosis (caspase-3, BH3-only proteins). In contrast, the LPS challenge is blocked by the ER stress inhibitor TUDCA, resulting in: CHOP downregulation, reduced caspase-1, caspase-11, caspase-3 activities, lowered interleukin-1β secretion and rescue from cell death. The central role of CHOP in mediating the activation of proinflammatory caspases and cell death was characterized by performing knockdown experiments in primary mouse hepatocytes. Finally, the analysis of human steatohepatitis liver biopsies showed a correlation between the upregulation of inflammasome and ER stress markers, as well as liver injury. We demonstrate here that ER stress leads to hepatic NLRP3 inflammasome pyroptotic death, thus contributing as a novel mechanism of inflammation-mediated liver injury in chronic liver diseases. Inhibition of ER-dependent inflammasome activation and cell death pathways may represent a potential therapeutic approach in chronic liver diseases.

Liver Disease Diagnosis and TreatmentEndoplasmic Reticulum Stress and DiseaseInflammasome and immune disordersUnfolded protein responseInflammasomePyroptosisSteatohepatitisProgrammed cell deathHepatocyteProinflammatory cytokineCHOPLiver injuryCaspase 1

MeSH terms

NLR Family, Pyrin Domain-Containing 3 ProteinAnimalsCarrier ProteinsChronic DiseaseHumansLipopolysaccharidesLiver DiseasesObesitySignal TransductionCell DeathHepatocytesMiceInflammasomesEndoplasmic Reticulum Stress

Funding

  • Eli Lilly and Company
  • European Foundation for the Study of Diabetes
  • Agence Nationale de la Recherche
  • Institut National de la Santé et de la Recherche Médicale
  • Association Française pour l'Etude du Foie
  • Société Francophone du Diabète
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